The ABCD constants of a lossless three-phase, 500-kV transmission line are A = D = 0.86 + j0 B = 0 + j130.2 C = j0.002 (a) Obtain the sending end quantities and the voltage regulation when line delivers 1000 MVA at 0.8 lagging power factor at 500 kV. To improve the line performance, series capacitors are installed at both ends in each phase of the transmission line. As a result of this, the compensated ABCD constants become A' B' C' D' 1 -jjXe А В where Xe is the total reactance of the series capacitor. If Xe = 100 N (b) Determine the compensated ABCD constants.

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The ABCD constants of a lossless three-phase, 500-kV transmission line are
A = D = 0.86 + j0
B = 0 + j130.2
C = j0.002
(a) Obtain the sending end quantities and the voltage regulation when line delivers
1000 MVA at 0.8 lagging power factor at 500 kV.
To improve the line performance, series capacitors are installed at both ends
in each phase of the transmission line. As a result of this, the compensated ABCD
constants become
A' B'
C' D'
1 -}jXe
C
А В
1 -jjXe
where Xe is the total reactance of the series capacitor. If Xe = 100 N
(b) Determine the compensated ABCD constants.
Transcribed Image Text:The ABCD constants of a lossless three-phase, 500-kV transmission line are A = D = 0.86 + j0 B = 0 + j130.2 C = j0.002 (a) Obtain the sending end quantities and the voltage regulation when line delivers 1000 MVA at 0.8 lagging power factor at 500 kV. To improve the line performance, series capacitors are installed at both ends in each phase of the transmission line. As a result of this, the compensated ABCD constants become A' B' C' D' 1 -}jXe C А В 1 -jjXe where Xe is the total reactance of the series capacitor. If Xe = 100 N (b) Determine the compensated ABCD constants.
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